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31.
Contribution of Wastewater Treatment Plant Effluents to Nutrient Dynamics in Aquatic Systems: A Review 总被引:1,自引:0,他引:1
Excessive nutrient loading (considering nitrogen and phosphorus) is a major ongoing threat to water quality and here we review
the impact of nutrient discharges from wastewater treatment plants (WWTPs) to United States (U.S.) freshwater systems. While
urban and agricultural land uses are significant nonpoint nutrient contributors, effluent from point sources such as WWTPs
can overwhelm receiving waters, effectively dominating hydrological characteristics and regulating instream nutrient processes.
Population growth, increased wastewater volumes, and sustainability of critical water resources have all been key factors
influencing the extent of wastewater treatment. Reducing nutrient concentrations in wastewater is an important aspect of water
quality management because excessive nutrient concentrations often prevent water bodies from meeting designated uses. WWTPs
employ numerous physical, chemical, and biological methods to improve effluent water quality but nutrient removal requires
advanced treatment and infrastructure that may be economically prohibitive. Therefore, effluent nutrient concentrations vary
depending on the particular processes used to treat influent wastewater. Increasingly stringent regulations regarding nutrient
concentrations in discharged effluent, along with greater freshwater demand in populous areas, have led to the development
of extensive water recycling programs within many U.S. regions. Reuse programs provide an opportunity to reduce or eliminate
direct nutrient discharges to receiving waters while allowing for the beneficial use of reclaimed water. However, nutrients
in reclaimed water can still be a concern for reuse applications, such as agricultural and landscape irrigation. 相似文献
32.
大气污染防治和环境治理的紧迫性和复杂性需要科学有效的决策,而以费效评估为标志的综合决策评估模型是支撑环境决策和管理的重要工具.当前以ABaCAS(Air Pollution Control Cost-Benefit and Attainment Assessment System,空气污染控制成本效益与达标评估系统)为代表的综合决策评估模型可以实现对特定减排方案的费效评估,然而无法支持开展基于费效的达标路径优化,以及对应不同环境目标下减排策略的优化制定.针对上述问题,建立了大气污染防治综合科学决策支持平台.该平台以ABaCAS的4个核心模块为基础,建立了新的基于环境目标的反算技术(LE-CO)及优化集成运行模式(ABaCAS-OE),实现了对不同环境目标要求的减排量反算,并对优化的减排策略下的空气质量改善效果、目标可达性、控制成本及健康收益进行快速估算.将大气污染防治综合科学决策支持平台应用到京津冀及周边地区"2+26"城市,反算了2035年达标要求下的减排情景,以及对应减排方案的费用与效益.结果表明,相较于2015年,预测了2035年京津冀及周边地区的PM2.5、SO2、NOx、VOCs、NH3排放量需分别减排70%~87%、49%~85%、66%~74%、51%~66%、0~40%才可达标,并且该情景可以带来可观的效益,费用-效益比达3.7.未来大气污染防治综合科学决策支持平台的研究将进一步面向多目标、多行业、多组分、多区域的精细化调控技术,实现经济、能源、排放、浓度、成本、健康、生态、气候一体化的综合决策,以全面支撑我国大气污染防治的综合科学决策. 相似文献
33.
34.
Thomas J. Fredette Joseph D. Germano Drew A. Carey Peggy M. Murray Paula G. Kullberg 《Chemistry and Ecology》2013,29(1-4):173-194
Geochemical analysis and visual inspection of cores collected from capped dredged material mounds revealed that in many cores, cap material was clearly distinguishable, both visually and chemically, from mound material. Contaminated dredged sediments were disposed in Long Island Sound eleven and seven years prior to sampling, and capped with uncontaminated dredged sediments. Core data provided no conclusive evidence of physical disturbance of, or chemical migration from, the contaminated mound sediments. Obvious chemical gradients of contaminant concentrations, which we propose are indicators of chemical migration, were not detected in the cores. Heterogeneity of the cap and mound sediments in some cores made the interface less distinct. We postulate that the preservation of spatial variability of sediment texture and associated contaminants observed within dredged material mounds is a result of the dredging process. Preservation of the textural and contaminant history of dredged sediments within finegrained cohesive cap materials provides evidence of the absence of physical or chemical disturbance. 相似文献
35.
Xiao-Huan Liu Yang Zhang Shu-Hui Cheng Jia Xing Qiang Zhang David G. Streets Carey Jang Wen-Xing Wang Ji-Ming Hao 《Atmospheric environment (Oxford, England : 1994)》2010,44(20):2415-2426
The U.S. EPA Models-3 Community Multiscale Air Quality (CMAQ) modeling system with the process analysis tool is applied to China to study the seasonal variations and formation mechanisms of major air pollutants. Simulations show distinct seasonal variations, with higher surface concentrations of sulfur dioxide (SO2), nitrogen dioxide (NO2), and particulate matter with aerodynamic diameter less than or equal to 10 μm (PM10), column mass of carbon monoxide (CO) and NO2, and aerosol optical depth (AOD) in winter and fall than other seasons, and higher 1-h O3 and troposphere ozone residual (TOR) in spring and summer than other seasons. Higher concentrations of most species occur over the eastern China, where the air pollutant emissions are the highest in China. Compared with surface observations, the simulated SO2, NO2, and PM10 concentrations are underpredicted throughout the year with NMBs of up to ?51.8%, ?32.0%, and ?54.2%, respectively. Such large discrepancies can be attributed to the uncertainties in emissions, simulated meteorology, and deviation of observations based on air pollution index. Max. 1-h O3 concentrations in Jan. and Jul. at 36-km are overpredicted with NMBs of 12.0% and 19.3% and agree well in Apr. and Oct. Simulated column variables can capture the high concentrations over the eastern China and low values in the central and western China. Underpredictions occur over the northeastern China for column CO in Apr., TOR in Jul., and AODs in both Apr. and Jul.; and overpredictions occur over the eastern China for column CO in Oct., NO2 in Jan. and Oct., and AODs in Jan. and Oct. The simulations at 12-km show a finer structure in simulated concentrations than that at 36-km over higher polluted areas, but do not always give better performance than 36-km. Surface concentrations are more sensitive to grid resolution than column variables except for column NO2, with higher sensitivity over mountain and coastal areas than other regions. 相似文献
36.
Lin CJ Shetty SK Pan L Pongprueksa P Jang C Chu HW 《Journal of the Air & Waste Management Association (1995)》2012,62(1):52-63
Quantifying the contribution of emission sources responsible for mercury deposition in specific receptor regions helps develop emission control strategies that alleviate the impact on ecosystem and human health. In light of the maximum available control technology (MACT) rules proposed by U.S. Environmental Protection Agency (EPA) and the ongoing intergovernmental negotiation coordinated by United Nations Environmental Programme (UNEP) for mercury, the Community Multiscale Air Quality Modeling System (CMAQ-Hg) was applied to estimate the source contribution in six subregions of the contiguous United States (CONUS). The considered source categories include electric generating units (EGU), iron and steel industry (IRST), other industrial point sources excluding EGU and IRST (OIPM), the remaining anthropogenic sources (RA), natural processes (NAT), and out-of-boundary transport (BC). It is found that, on an annual basis, dry deposition accounts for two-thirds of total annual deposition in CONUS (474 Mg yr(-1)), mainly contributed by reactive gaseous mercury (about 60% of total deposition). The contribution from large point sources can be as high as 75% near the emission sources (< 100 km), indicating that emission reduction may result in direct deposition decrease near the source locations. Out-of-boundary transport contributes from 68% (Northeast) to 91% (West Central) of total deposition. Excluding the contribution from out-of boundary transport, EGU contributes to about 50% of deposition in the Northeast, Southeast, and East Central regions, whereas emissions from natural processes are more important in the Pacific and West Central regions (contributing up to 40% of deposition). This suggests that the implementation of the new EPA MACT standards will significantly benefit only these three regions. Emission speciation is a key factor for local deposition. The source contribution exhibits strong seasonal variation. Deposition is greater in warm seasons due to stronger Hg0 oxidation. However, the contribution from anthropogenic sources is smaller in warm seasons because of larger emissions from natural processes and stronger vertical mixing that facilitates transport. 相似文献
37.
John P. Bucci Michelle D. Shattuck Semra A. Aytur Richard Carey William H. McDowell 《Environmental monitoring and assessment》2017,189(8):406
Water quality impairment by fecal waste in coastal watersheds is a public health issue. The present study provided evidence for the use of a mitochondrial (mtDNA) marker to detect animal fecal sources in surface water. The accurate identification of fecal pollution is based on the notion that fecal microorganisms preferentially inhabit a host animal’s gut environment. In contrast, mtDNA host-specific markers are inherent to eukaryotic host cells, which offers the advantage by detecting DNA from the host rather than its fecal bacteria. The present study focused on sampling water presumably from non-point sources (NPS), which can increase bacterial and nitrogen concentrations to receiving water bodies. Stream sampling sites located within the Piscataqua River Watershed (PRW), New Hampshire, USA, were sampled from a range of sites that experienced nitrogen inputs such as sewer and septic systems and suburban runoff. Three mitochondrial (mtDNA) gene marker assays (human, bovine, and canine) were tested from surface water. Nineteen sites were sampled during an 18-month period. Analyses of the combined single and multiplex assay results showed that the proportion of occurrence was highest for bovine (15.6%; n = 77) compared to canine (5.6%; n = 70) and human (5.7%; n = 107) mtDNA gene markers. For the human mtDNA marker, there was a statistically significant relationship between presence vs. absence and land use (Fisher’s test p = 0.0031). This result was evident particularly for rural suburban septic, which showed the highest proportion of presence (19.2%) compared to the urban sewered (3.3%), suburban sewered (0%), and agricultural (0%) as well as forested septic (0%) sites. Although further testing across varied land use is needed, our study provides evidence for using the mtDNA marker in large watersheds. 相似文献
38.
Wang L Hao J He K Wang S Li J Zhang Q Streets DG Fu JS Jang CJ Takekawa H Chatani S 《Journal of the Air & Waste Management Association (1995)》2008,58(8):1057-1069
In the last 10 yr, Beijing has made a great effort to improve its air quality. However, it is still suffering from regional coarse particulate matter (PM10) pollution that could be a challenge to the promise of clean air during the 2008 Olympics. To provide scientific guidance on regional air pollution control, the Mesoscale Modeling System Generation 5 (MM5) and the Models-3/Community Multiscale Air Quality Model (CMAQ) air quality modeling system was used to investigate the contributions of emission sources outside the Beijing area to pollution levels in Beijing. The contributions to the PM10 concentrations in Beijing were assessed for the following sources: power plants, industry, domestic sources, transportation, agriculture, and biomass open burning. In January, it is estimated that on average 22% of the PM10 concentrations can be attributed to outside sources, of which domestic and industrial sources contributed 37 and 31%, respectively. In August, as much as 40% of the PM10 concentrations came from regional sources, of which approximately 41% came from industry and 31% from power plants. However, the synchronous analysis of the hourly concentrations, regional contributions, and wind vectors indicates that in the heaviest pollution periods the local emission sources play a more important role. The implications are that long-term control strategies should be based on regional-scale collaborations, and that emission abatement of local sources may be more effective in lowering the PM10 concentration levels on the heavy pollution days. Better air quality can be attained during the Olympics by placing effective emission controls on the local sources in Beijing and by controlling emissions from industry and power plants in the surrounding regions. 相似文献
39.
基于响应面模型的区域大气污染控制辅助决策工具研发 总被引:4,自引:3,他引:4
基于CMAQ模型结果,利用高维克里金插值算法,建立了排放控制因子与污染物环境浓度的响应面模型(RSM),实现了大气污染可控源排放与复合污染水平的实时函数响应.研究结果显示,RSM对PM2.5的预测结果与CMAQ实际模拟结果的误差在容许范围内(最大误差小于0.20μg.m-3,3.89%).基于所建立的RSM,开发了RSM-VAT区域大气污染控制可视化辅助决策工具.使用RSM-VAT对美国8个典型城市的PM2.5污染状况进行了控制情景分析,通过"可视化展示"和"图表分析"二大模块,输出不同控制情景下的环境污染物浓度的实时响应图、可视化展示和数据分析图表等结果. 相似文献
40.
Hua Wang Yun Zhu Carey Jang Che-Jen Lin Shuxiao Wang Joshua S. Fu Jian Gao Shuang Deng Junping Xie Dian Ding Xuezhen Qiu Shicheng Long 《环境科学学报(英文版)》2015
Due to the increasingly stringent standards, it is important to assess whether the proposed emission reduction will result in ambient concentrations that meet the standards. The Software for Model Attainment Test—Community Edition (SMAT-CE) is developed for demonstrating attainment of air quality standards of O3 and PM2.5. SMAT-CE improves computational efficiency and provides a number of advanced visualization and analytical functionalities on an integrated GIS platform. SMAT-CE incorporates historical measurements of air quality parameters and simulated air pollutant concentrations under a number of emission inventory scenarios to project the level of compliance to air quality standards in a targeted future year. An application case study of the software based on the U.S. National Ambient Air Quality Standards (NAAQS) shows that SMAT-CE is capable of demonstrating the air quality attainment of annual PM2.5 and 8-hour O3 for a proposed emission control policy. 相似文献